Norway

Brokke — 443 MW Hydroelectric

Hydroelectric Renewable Verified

Brokke is a 443 MW hydro power plant located in Norway. View location, capacity, and technical details.

Capacity
443 MW

Installed

Commissioned
1969

Year online

Owner
Statkraft

Operator

Location
59.12, 7.51

Coordinates

Insights

#15
largest in Norway
#811
largest Hydroelectric worldwide
#4,994
largest worldwide
1969
15 yrs older than avg
264
operated by Statkraft
46
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
443 MW
Commissioned
1969
Status
Operational
Owner
Statkraft
Country
Norway
Coordinates
59.123, 7.511

Carbon Footprint

Annual CO₂
37,255 t

tonnes / year

Lifetime CO₂
2,980,362 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

8,099
cars per year
4,967
homes per year
1,693,388
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Plants

About this plant

The Brokke Hydroelectric Power Plant, located in Norway, possesses a generation capacity of 443 megawatts (MW), making it a significant contributor to the country’s energy sector. As a hydroelectric facility, Brokke harnesses the energy of flowing water to produce electricity, aligning with Norway’s commitment to renewable energy sources. Norway is renowned for its extensive use of hydroelectric power, with approximately 95% of the country’s electricity generated from this sustainable resource. The Brokke plant plays a crucial role in providing a reliable and clean energy supply, thereby supporting Norway’s efforts to maintain a low-carbon economy and reduce greenhouse gas emissions.

The technical operation of the Brokke Power Plant is centered around its utilization of hydroelectric power, which involves converting the kinetic energy of water into electrical energy. The facility typically operates by diverting water from a nearby river or reservoir through turbines, which then generate electricity as the water flows back into its natural course. This method not only maximizes efficiency but also minimizes the carbon footprint compared to fossil fuel-based power generation. The Brokke plant’s capacity of 443 MW is indicative of its ability to produce substantial amounts of electricity, catering to both domestic consumption and export needs.

In terms of environmental impact, the Brokke Hydroelectric Power Plant exemplifies a relatively low-impact energy generation method when compared to traditional fossil fuel plants. Hydroelectric power is generally considered to be a clean energy source that produces no direct emissions of carbon dioxide or other harmful pollutants during operation. However, the construction and operation of hydroelectric facilities can lead to ecological changes, including alterations in river ecosystems, fish migration patterns, and local habitats. In Norway, stringent environmental regulations and assessments are typically conducted to mitigate these impacts, ensuring that the benefits of renewable energy generation do not come at the expense of local biodiversity and ecosystems.

Regionally, the Brokke Power Plant is significant not only for its contribution to the national grid but also for its role in local economies. The plant provides jobs and stimulates economic activity in the surrounding area, while also ensuring energy security for local communities. Additionally, it serves as a crucial part of Norway’s energy export strategy, allowing the country to supply neighboring nations with renewable electricity. As global demand for clean energy continues to rise, facilities like Brokke are positioned to play an increasingly important role in regional energy markets and international energy cooperation.

In summary, the Brokke Hydroelectric Power Plant stands as a testament to Norway’s leadership in renewable energy production. With its substantial capacity, low environmental impact, and regional economic benefits, Brokke is an integral part of Norway’s energy landscape, showcasing the potential of hydroelectric power as a sustainable energy source for the future.

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